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Interannual variability of western North Pacific SST anomalies and its impact on North Pacific and North America

机译:西北太平洋海表温度异常的年际变化及其对北太平洋和北美的影响

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In this study, the interannual variability of sea surface temperature (SST) and its atmospheric teleconnection over the western North Pacific (WNP) toward the North Pacific/North America during boreal winter are investigated. First, we defined the WNP mode as the first empirical orthogonal function (EOF) mode of SST anomalies over the WNP region (100-165A degrees E, 0-35A degrees N), of which the principle component time-series are significantly correlated with several well-known climate modes such as the warm pool mode which is the second EOF mode of the tropical to North Pacific SST anomalies, North Pacific oscillation (NPO), North Pacific gyre oscillation (NPGO), and central Pacific (CP)-El Nio at 95% confidence level, but not correlated with the eastern Pacific (EP)-El Nio. The warm phase of the WNP mode (sea surface warming) is initiated by anomalous southerly winds through reduction of wind speed with the background of northerly mean winds over the WNP during boreal winter, i.e., reduced evaporative cooling. Meanwhile, the atmospheric response to the SST warming pattern and its diabatic heating further enhance the southerly wind anomaly, referred to the wind-evaporation-SST (WES) feedback. Thus, the WNP mode is developed and maintained through winter until spring, when the northerly mean wind disappears. Furthermore, it is also known that anomalous upper-level divergence associated with WNP mode leads to the NPO-like structure over the North Pacific and the east-west pressure contrast pattern over the North America through Rossby wave propagation, impacting the climate over the North Pacific and North America.
机译:在这项研究中,研究了北冰洋冬季在北太平洋西部(WNP)向北太平洋/北美的海表温度(SST)及其大气遥相关的年际变化。首先,我们将WNP模式定义为WNP区域(E-100-165A度,N-0-35A度)上SST异常的第一个经验正交函数(EOF)模式,其中主成分时间序列与几种著名的气候模式,例如暖池模式,这是热带到北太平洋海温异常的第二个EOF模式,北太平洋振荡(NPO),北太平洋回旋振荡(NPGO)和中太平洋(CP)-El Nio的置信度为95%,但与东太平洋(EP)-El Nio没有关联。 WNP模式的暖期(海表变暖)是由北风冬季期间北风平均偏北的背景下通过降低风速引起的异常南风启动的,即减少了蒸发冷却。同时,大气对SST变暖模式及其绝热加热的响应进一步增强了南风异常,这称为风-蒸发-SST(WES)反馈。因此,WNP模式在冬季一直发展到春季直至春季,此时北风平均消失。此外,还已知与WNP模式相关的异常高层发散会导致北太平洋上空的NPO状结构,以及通过罗斯比波传播在北美上空形成的东西向压力对比模式,从而影响到北部的气候。太平洋和北美。

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